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Nicotinamide 1,N6-ethenoadenine dinucleotide (Synonyms:烟酰胺 1,N(6)-乙烯桥腺嘌呤二核苷酸)
目录号 : KP12706 CAS No. : 38806-38-1

Nicotinamide 1,N6-ethenoadenine dinucleotide (ε-NAD) 是 NAD 的一种荧光类似物,能够作为细菌毒素催化信号转导 G 蛋白的 G-ADP 核糖基化的底物。Nicotinamide 1,N6-ethenoadenine dinucleotide 可作为荧光底物用于 ADP 核糖基化反应的研究。

规格 价格 是否有货 数量
1mg
In-stock
5mg
In-stock
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生物活性

Nicotinamide 1,N6-ethenoadenine dinucleotide (ε-NAD) , a fluorescent analogue of NAD, is able to serve as a substrate for the bacterial toxincatalyzed G-ADP ribosylation of signal-transducing G-proteins. Nicotinamide 1,N6-ethenoadenine dinucleotide can be used as a fluorescent substrate for the studies of the ADP ribosylation reaction.

体外研究

Nicotinamide 1,N6-ethenoadenine dinucleotide serves as a signal transduction G protein ε - ADP ribosylation substrate catalyzed by bacterial toxins.

Nicotinamide 1,N6-ethenoadenine dinucleotide can be cleaved by phosphodiesterase I (derived from C. adamanteus venom) into 5 '- ε - AMP and nicotinamide mononucleotide.

Nicotinamide 1,N6-ethenoadenine dinucleotide can bind to hepatic tyrosine dehydrogenase .

分子式
C23H27N7O14P2
分子量
687.45
CAS号
38806-38-1
中文名称
烟酰胺 1,N(6)-乙烯桥腺嘌呤二核苷酸
运输条件

Room temperature in continental US; may vary elsewhere.

储存方式

-20°C, sealed storage, away from moisture

 * In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture)

溶解性数据
In Vitro: 

H2O : 100 mg/mL (145.47 mM; Need ultrasonic)

配制储备液
                                           
浓度 溶剂体积 质量 1 mg 5 mg 10 mg
                                                                                                                    
1 mM 1.4547 mL 7.2733 mL 14.5465 mL
5 mM 0.2909 mL 1.4547 mL 2.9093 mL
10 mM 0.1455 mL 0.7273 mL 1.4547 mL
*

请根据产品在不同溶剂中的溶解度选择合适的溶剂配制储备液;一旦配成溶液,请分装保存,避免反复冻融造成的产品失效。
储备液的保存方式和期限:-80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture)。-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。

The molarity calculator equation
Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)
The dilution calculator equation
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
This equation is commonly abbreviated as: C1V1 = C2V2